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Full-Scale Burial Testing of Pipes and Storm Chambers

机译:管道和暴风雨室的全面埋葬测试

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A complex soil-structure interaction is involved when buried flexible plastic pipe or storm chamber systems are placed under load, and the stability of these buried systems must be demonstrated under "worst-case" live and/or dead load conditions. While it has become common place to demonstrate buried structure stability through analytical methods, including empirical equations or finite element modeling, full-scale burial tests have been recognized as necessary to, at least, calibrate these analytical methods. Two types of field tests have been used for this purpose: conventional excavation/backfill construction and compact burial chambers. This paper describes these full-scale burial testing facilities and procedures and how they have been used to develop deflection and strain data, along with a visual record, for use in correlating results of small-scale laboratory tests and calibrating design models. Included is an example of each type of field test - one evaluating storm chambers and another looking at corrugated pipe.
机译:当将埋入的柔性塑料管或雨室系统置于负载下时,会涉及复杂的土壤结构相互作用,并且必须在“最坏情况”的活载和/或静载条件下证明这些埋入系统的稳定性。虽然通过分析方法(包括经验方程或有限元建模)来证明埋藏结构的稳定性已成为普遍现象,但至少要校准这些分析方法,必须进行全面的埋藏测试。为此,使用了两种类型的现场测试:常规的挖掘/回填结构和紧凑的墓室。本文介绍了这些全面的埋葬测试设施和程序,以及如何将其用于开发变形和应变数据以及可视化记录,以用于关联小型实验室测试结果和校准设计模型。其中包括每种现场测试的示例-一种评估风暴室,另一种评估波纹管。

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